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Integrated sleep scheduling for multiple relays and UEs in LTE-TDD

机译:LTE-TDD中多个继电器和UE的集成睡眠调度

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Abstract Energy-saving for the LTE-A network with relay nodes in TDD mode is addressed in this paper, and integrated sleep scheduling schemes for relay nodes and user devices under a base station are designed. The authors’ two previously proposed ideas, namely, Load-Based Power Saving (LBPS) and Virtual Time , are adopted in the design, and two strategies, namely, top-down and bottom-up each with three LBPS schemes are proposed. In the top-down strategy, the load as well as the channel quality on the backhaul link is first considered to determine the sleep pattern for all relay nodes, and then the sleep schedule for UEs under each relay node is determined accordingly. On the contrary, the load and the channel quality on the access links are first considered and then integrated into the sleep schedule on the backhaul link. Two associated mechanisms for the proposed LBPS schemes to operate in the virtual time domain are also proposed in the paper, i.e., calculation of the virtual subframe capacity and the mapping mechanisms from the virtual time to the actual time. The benefit of the proposed schemes in power saving over the standard-based scheme is demonstrated by the simulation study, and the bottom-up scheme of BU-Split outperforms the other schemes under equally distributed input load as well as the hotspot scenario. Discussion on the tradeoff of the processing overhead and the performance for the proposed schemes is presented in the paper.
机译:摘要在本文中解决了具有TDD模式中的中继节点的LTE-A网络的节能,并设计了用于基站下的中继节点和用户设备的集成睡眠调度方案。作者在设计中采用了两种先前提出的思路,即加载基于负载的省电(LBP)和虚拟时间,并提出了两种策略,即自上而下和自下而上,每个策略都有三种LBPS方案。在自上而下的策略中,首先考虑回程链路上的负载以及频道质量以确定所有中继节点的睡眠模式,然后相应地确定每个中继节点下的UE的休眠时间表。相反,首先考虑接入链路上的负载和信道质量,然后在回程链路上集成到睡眠时间表中。在纸质中还提出了两个相关的LBP方案以在虚拟时域中操作的两个相关机制,即,从虚拟子帧容量和从虚拟时间到实际时间的映射机制计算。通过模拟研究证明了通过基于标准的方案的省电方案的提议的益处,并且Bu-Split的自下而上方案优于同样分布的输入负载下的其他方案以及热点场景。论文讨论了处理开销的权衡和拟议计划的绩效。

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